Simulated effect of defect volume and location on very high cycle fatigue of laser beam powder bed fused AlSi10Mg

被引:0
|
作者
Tahmasbi, Kamin [1 ]
Yaghoobi, Mohammadreza [2 ]
Shao, Shuai [3 ,4 ]
Shamsaei, Nima [3 ,4 ]
Haghshenas, Meysam [1 ]
机构
[1] Univ Toledo, Dept Mech Ind & Mfg Engn MIME, Fatigue Fracture & Failure Lab F3L, Fatigue, OH 43606 USA
[2] Univ Michigan, Mat Sci & Engn, Ann Arbor, MI 48109 USA
[3] Auburn Univ, Dept Mech Engn, Auburn, AL 36849 USA
[4] Auburn Univ, Natl Ctr Addit Mfg Excellence, Auburn, AL 36849 USA
关键词
Laser beam powder bed fusion; AlSi10Mg; Crystal plasticity; Very high cycle fatigue; Fatigue indicator parameter; DEFORMATION; BEHAVIOR; STATE;
D O I
10.1016/j.ijfatigue.2025.108926
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
This study quantifies the interaction between volumetric defect location and size on the very high cycle fatigue (VHCF) of laser beam powder bed fused (LB-PBF) AlSi10Mg. Crystal plasticity finite element method (CPFEM) simulations were used to investigate the effects of defect location and size on the driving force for crack initiation. The CPFEM model was calibrated against uniaxial and cyclic experimental data of LB-PBF AlSi10Mg. Defect characteristics were informed by experimental data from the specimens produced in various geometries to create realistic representative volume elements (RVEs) with equivalent volume fractions of defects. By embedding defects of varying sizes and locations within the RVEs, fatigue indicator parameters (FIPs) were calculated to analyze the impact of defects' characteristics on fatigue performance. Different combinations of defect volume and locations were generated for various microstructure instantiations, providing insight into extreme value fatigue responses. Larger defect volumes located on free surfaces consistently generated the highest FIPs, suggesting defect size and boundary proximity intensify stress concentration effects. RVEs with multiple smaller defects produced lower FIPs than those with single large critical defects. These findings underscore the critical role of defect characteristics on fatigue life, providing a foundation for future predictive modeling in fatigue- sensitive AM applications.
引用
收藏
页数:29
相关论文
共 50 条
  • [41] Sustainable production of AlSi10Mg parts by laser powder bed fusion process
    Mercurio, Vincenza
    Calignano, Flaviana
    Iuliano, Luca
    International Journal of Advanced Manufacturing Technology, 2023, 125 (7-8): : 3117 - 3133
  • [42] Very high cycle fatigue characterization of additively manufactured AlSi10Mg and AlSi7Mg aluminium alloys based on ultrasonic fatigue testing
    Lesperance, Xavier
    Ilie, Paul
    Ince, Ayhan
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2021, 44 (03) : 876 - 884
  • [43] Killer notches: The effect of as-built surface roughness on fatigue failure in AlSi10Mg produced by laser powder bed fusion
    du Plessis, A.
    Beretta, S.
    ADDITIVE MANUFACTURING, 2020, 35
  • [44] Correlation between quasistatic and fatigue properties of additively manufactured AlSi10Mg using Laser Powder Bed Fusion
    Kempf, Andreas
    Kruse, Julius
    Madia, Mauro
    Hilgenberg, Kai
    9TH EDITION OF THE INTERNATIONAL CONFERENCE ON FATIGUE DESIGN, FATIGUE DESIGN 2021, 2022, 38 : 77 - 83
  • [45] Fatigue Improvement of AlSi10Mg Fabricated by Laser-Based Powder Bed Fusion through Heat Treatment
    Sajadi, Felix
    Tiemann, Jan-Marc
    Bandari, Nooshin
    Darabi, Ali Cheloee
    Mola, Javad
    Schmauder, Siegfried
    METALS, 2021, 11 (05)
  • [46] High cycle fatigue behaviour of AlSi10Mg alloy processed by selective laser melting technique
    Vanitha, C.
    Bansod, Pankaj
    Rao, Bonta Srinivasa
    Narasaiah, N.
    Pazhanivel, B.
    Patanayak, Deepak K.
    ADVANCES IN MATERIALS AND PROCESSING TECHNOLOGIES, 2025, 11 (01) : 544 - 557
  • [47] Fatigue response of AlSi10Mg by laser powder bed fusion: influence of build orientation, heat, and surface treatments
    Fini, S.
    Croccolo, D.
    De Agostinis, M.
    Olmi, G.
    Paiardini, L.
    Scapecchi, C.
    Mele, M.
    PROGRESS IN ADDITIVE MANUFACTURING, 2025, 10 (02) : 1385 - 1403
  • [48] Very High Cycle Fatigue Life Prediction of SLM AlSi10Mg Based on CDM and SVR Models
    Yu, Yibing
    Sun, Linlin
    Bian, Zhi
    Wang, Xiaojia
    Zhang, Zhe
    Song, Chao
    Hu, Weiping
    Chen, Xiao
    AEROSPACE, 2023, 10 (09)
  • [49] Role of powder particle size on laser powder bed fusion processability of AlSi10mg alloy
    Balbaa, M. A.
    Ghasemi, A.
    Fereiduni, E.
    Elbestawi, M. A.
    Jadhav, S. D.
    Kruth, J-P
    ADDITIVE MANUFACTURING, 2021, 37
  • [50] Effect of low-temperature annealing on electrical resistivity and mechanical properties of laser-powder bed fused AlSi10Mg alloy
    Miyajima, Yoji
    Nakamura, Yuta
    Konishi, Yoichiro
    Ishikawa, Kazuhiro
    Wang, Wenyuan
    Takata, Naoki
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2023, 871